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Published on: July 17, 2019
Regulation of ras signaling dynamics by Sos-mediated positive feedback
Sean Boykevisch1, Chen Zhao, Holger Sondermann
1Department of Molecular Genetics and Microbiology, State University of New York, at Stony Brook, Stony Brook, New York 11794, USA.
Abstract:
The RTK-Ras-ERK cascade is a central signaling module implicated in the control of diverse biological processes including cell proliferation, differentiation, and survival. The coupling of RTK to Ras is mediated by the Ras-specific nucleotide-exchange factor Son of Sevenless (Sos), which activates Ras by inducing the exchange of GDP for GTP . Considerable evidence indicates that the duration and amplitude of Ras signals are important determinants in controlling the biological outcome . However, the mechanisms that regulate the quantitative output of Ras signaling remain poorly understood. We define a previously unrecognized regulatory component of the machinery that specifies the kinetic properties of signals propagated through the RTK-Ras-ERK cascade. We demonstrate that the establishment of a positive feedback loop involving Ras.GTP and Sos leads to an increase in the amplitude and duration of Ras activation in response to EGF stimulation. This effect is propagated to downstream elements of the pathway as reflected by sustained EGF-induced ERK phosphorylation and enhanced SRE-dependent transcription. As a consequence, the physiological endpoint of EGF action is switched from proliferation to differentiation. We propose that the engagement of Ras/Sos positive feedback loop may contribute to the mechanism by which ligand stimulation is coupled to discrete biological responses.
Insights
A newly discovered positive feedback loop involving Ras and Son of Sevenless (Sos) enhances Ras signaling duration and amplitude. This mechanism switches epidermal growth factor (EGF) responses from cell proliferation to differentiation.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Signal transduction
Background:
- The RTK-Ras-ERK pathway controls cell proliferation, differentiation, and survival.
- Ras signal amplitude and duration are critical for biological outcomes.
- Mechanisms regulating Ras signaling output are not fully understood.
Purpose of the Study:
- To identify novel regulatory components of the RTK-Ras-ERK cascade.
- To elucidate mechanisms controlling signal kinetics in this pathway.
- To understand how quantitative signal output dictates biological responses.
Main Methods:
- Investigated the role of a positive feedback loop involving Ras.GTP and Son of Sevenless (Sos).
- Utilized epidermal growth factor (EGF) stimulation.
- Assessed downstream effects including ERK phosphorylation and SRE-dependent transcription.
Main Results:
- A positive feedback loop between Ras.GTP and Sos was identified.
- This loop increases the amplitude and duration of Ras activation upon EGF stimulation.
- Sustained ERK phosphorylation and enhanced SRE transcription were observed, leading to a switch in cellular response.
Conclusions:
- The Ras/Sos positive feedback loop is a key regulator of RTK-Ras-ERK signaling kinetics.
- This mechanism couples ligand stimulation to specific biological outcomes like differentiation.
- Understanding this feedback loop provides insights into precise control of cellular processes.
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